The Cysteine-Containing Cell-Penetrating Peptide AP Enables Efficient Macromolecule Delivery to T Cells and Controls Autoimmune Encephalomyelitis

Author:

Kim Won-JuORCID,Kim Gil-Ran,Cho Hyun-Jung,Choi Je-Min

Abstract

T cells are key immune cells involved in the pathogenesis of several diseases, rendering them important therapeutic targets. Although drug delivery to T cells is the subject of continuous research, it remains challenging to deliver drugs to primary T cells. Here, we used a peptide-based drug delivery system, AP, which was previously developed as a transdermal delivery peptide, to modulate T cell function. We first identified that AP-conjugated enhanced green fluorescent protein (EGFP) was efficiently delivered to non-phagocytic human T cells. We also confirmed that a nine-amino acid sequence with one cysteine residue was the optimal sequence for protein delivery to T cells. Next, we identified the biodistribution of AP-dTomato protein in vivo after systemic administration, and transduced it to various tissues, such as the spleen, liver, intestines, and even to the brain across the blood–brain barrier. Next, to confirm AP-based T cell regulation, we synthesized the AP-conjugated cytoplasmic domain of CTLA-4, AP-ctCTLA-4 peptide. AP-ctCTLA-4 reduced IL-17A expression under Th17 differentiation conditions in vitro and ameliorated experimental autoimmune encephalomyelitis, with decreased numbers of pathogenic IL-17A+GM-CSF+ CD4 T cells. These results collectively suggest the AP peptide can be used for the successful intracellular regulation of T cell function, especially in the CNS.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Pharmaceutical Science

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1. Cell-Penetrating Peptides-Mediated Therapeutic Agents Delivery into the Central Nervous System;ACS Materials Letters;2024-05-09

2. Cyclized proteins with tags as permeable and stable cargos for delivery into cells and liposomes;International Journal of Biological Macromolecules;2023-12

3. Current understanding of CTLA-4: from mechanism to autoimmune diseases;Frontiers in Immunology;2023-07-11

4. Protein Delivery and Mimicry;CPP, Cell-Penetrating Peptides;2023

5. Introduction;CPP, Cell-Penetrating Peptides;2023

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